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Universal quantum computer based on Carbon Nanotube Rotators

Abstract

We propose a universal quantum computer based on a chain of carbon nanotube rotators where one metallic plate is attached to each rotator. The dynamical variable is the rotational angle . The attached plate connected to ground electrostatically interacts with two fixed plates. Two angle positions $\phi =0,\pi$ are made stable by applying a voltage difference between the attached plate and the two fixed plates. We assign and to the qubit states and . Then, considering a chain of rotators, we construct the arbitrary phase-shift gate, the NOT gate and the Ising gate, which constitute a set of universal quantum gates. They are executed by controlling the voltage between various plates.

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